Title :
Acceleration Closed-Loop Control on a Switched Reluctance Linear Launcher
Author :
Hao Chen ; Qianlong Wang ; IU, Herbert Ho-Ching
Author_Institution :
Sch. of Inf. & Electr. Eng., China Univ. of Min. & Technol., Xuzhou, China
Abstract :
In this paper we describe a developed switched reluctance linear launcher system with diagrams and photographs, which consists of a three-phase 6/4 structure simple side-switched reluctance linear motor, a three-phase asymmetric bridge power converter, and a TMS320F28335 DSP digital controller. The acceleration closed-loop control of the mover is proposed and verified for the first time. The acceleration closed-loop control of the mover is implemented by a fuzzy control algorithm. The turn-on angle and the turn-off angle of the main switches in the power converter are fixed, and the triggering signals of the main switches are modulated by the pulse width modulation (PWM) signal. The deviation of the acceleration between the given acceleration and the feedback practical acceleration, and the variation from the deviation of the acceleration are the two input control parameters. The increment of the duty ratio of the PWM signal is the output control parameter. The duty ratio of the PWM signal is regulated based on the fuzzy control algorithm. Flow diagrams of the software, such as the main program, the encoder unit time interrupt subroutine, analog-to-digital converter interrupt subroutine, and the fuzzy control algorithm subroutine are given. The developed prototype is tested experimentally. It is shown that the velocity response of the mover is satisfactory.
Keywords :
PWM power convertors; acceleration control; analogue-digital conversion; closed loop systems; digital signal processing chips; electromagnetic launchers; feedback; fuzzy control; linear motors; reluctance motors; switches; PWM signal; TMS320F28335 DSP digital controller; acceleration closed-loop control; analog-to-digital converter interrupt subroutine; encoder unit time interrupt subroutine; feedback practical acceleration; fuzzy control algorithm; input control parameters; main switches; photographs; power converter; pulse width modulation signal; switched reluctance linear launcher system; three-phase 6/4 structure simple side-switched reluctance linear motor; three-phase asymmetric bridge power converter; triggering signals; turn-off angle; turn-on angle; velocity response; Acceleration; Pulse width modulation; Reluctance motors; Switches; Windings; Acceleration control; fuzzy control; switched reluctance linear launcher;
Journal_Title :
Plasma Science, IEEE Transactions on
DOI :
10.1109/TPS.2013.2248757